Trávnícek M, Malý A, Sulová A, Ríman J
Folia Biol (Praha). 1982;28(3):145-59.
In vitro cleavage by p15 virion protein of the primary translation product of the avian oncovirus gag gene, the precursor polypeptide Pr76gag, was studied in kinetic experiments. Nondenatured 35S-methionine-labelled Pr76gag, which was synthetized in reticulocyte lysate programmed by genomic AMV-RNA was used as a substrate, pure native p15 (AMV) as a protease. Reaction conditions were optimal for in vitro protein synthesis. Composition of the cleavage products was estimated by immune precipitation with monospecific antisera against internal structural virion (AMV) proteins p27, p19, p15, and p12, and their size by SDS-PAGE. Monospecificity of each of the antisera was assessed by adsorption with the three respective heterologous gag proteins, followed by immune precipitation of 35S-methionine-labelled proteins of the virion (AMV) lysate. The p15-mediated in vitro cleavage proceeds rapidly and specifically. In the early stages (10 min incubation with p15) the Pr76gag was absent, and an optimum amount of six cleavage intermediates with the following size, composition (shown in parentheses) and orientation (determined form the presence or absence of antigenic determinants of p19 or p15 proteins as N- or C-terminal moieties of the precursor) was found: N-terminal fragments of 66K (p19, p27, p12) and 60K (p19, p27); internal fragments of 37K (p27, p12); C-terminal fragments of 51K (p27, p12, p15), 32K (p12, p15) and 21K (p12, p15). These intermediates were converted into the following four final cleavage products, as the only polypeptides detected after prolonged (5 h) incubations: mature p27 and mature p15 proteins and 38K and 34K polypeptides containing only p19 antigenic determinants. Mature p12 an p19 proteins were not found among cleavage products. Autocatalytic cleavage of Pr76gag was not observed. The results hav allowed us to conclude that the arrangement of the gag proteins in the Pr76gag is N-p19-(p10?)-p27-p12-p15-C and that under in vitro conditions p15 recognizes three correct cleavage sites on native Pr76gag: one located at p12-p15 junction and two on both sides of the p27 moiety, as well as aberrant cleavage sites located inside p12 and possibly also p10 moieties.
在动力学实验中,研究了禽肿瘤病毒gag基因初级翻译产物、前体多肽Pr76gag被p15病毒体蛋白进行体外切割的情况。以在基因组禽成髓细胞瘤病毒(AMV)-RNA编程的网织红细胞裂解物中合成的非变性35S-甲硫氨酸标记的Pr76gag作为底物,以纯天然p15(AMV)作为蛋白酶。反应条件对于体外蛋白质合成是最佳的。通过用针对病毒体内部结构(AMV)蛋白p27、p19、p15和p12的单特异性抗血清进行免疫沉淀来估计切割产物的组成,并通过SDS-PAGE来确定其大小。每种抗血清的单特异性通过用三种相应的异源gag蛋白进行吸附,随后对病毒体(AMV)裂解物的35S-甲硫氨酸标记蛋白进行免疫沉淀来评估。p15介导的体外切割迅速且具有特异性。在早期阶段(与p15孵育10分钟),Pr76gag不存在,并且发现了最佳量的六种切割中间体,其大小、组成(括号内显示)和方向(根据p19或p15蛋白的抗原决定簇作为前体的N端或C端部分的存在与否来确定)如下:66K的N端片段(p19、p27、p12)和60K的N端片段(p19、p27);37K的内部片段(p27、p12);51K的C端片段(p27、p12、p15)、32K的C端片段(p12、p15)和21K的C端片段(p12、p15)。随着长时间(5小时)孵育后检测到的唯一多肽,这些中间体转化为以下四种最终切割产物:成熟的p27和成熟的p15蛋白以及仅含有p19抗原决定簇的38K和34K多肽。在切割产物中未发现成熟的p12和p19蛋白。未观察到Pr76gag的自催化切割。这些结果使我们能够得出结论,Pr76gag中gag蛋白的排列是N-p19-(p10?)-p27-p12-p15-C,并且在体外条件下,p15识别天然Pr76gag上的三个正确切割位点:一个位于p12-p15连接处,两个位于p27部分的两侧,以及位于p12内部且可能也位于p10部分内部的异常切割位点。